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GCN1 在疾病与稳态中的新兴作用。

Emerging Role of GCN1 in Disease and Homeostasis.

机构信息

Department of Stress Response Science, Biomedical Research Center, Hirosaki University Graduate School of Medicine, 5 Zaifu-cho, Hirosaki 036-8562, Aomori, Japan.

Diet and Well-Being Research Institute, KAGOME, Co., Ltd., 17 Nishitomiyama, Nasushiobara 329-2762, Tochigi, Japan.

出版信息

Int J Mol Sci. 2024 Mar 5;25(5):2998. doi: 10.3390/ijms25052998.

Abstract

GCN1 is recognized as a factor that is essential for the activation of GCN2, which is a sensor of amino acid starvation. This function is evolutionarily conserved from yeast to higher eukaryotes. However, recent studies have revealed non-canonical functions of GCN1 that are independent of GCN2, such as its participation in cell proliferation, apoptosis, and the immune response, beyond the borders of species. Although it is known that GCN1 and GCN2 interact with ribosomes to accomplish amino acid starvation sensing, recent studies have reported that GCN1 binds to disomes (i.e., ribosomes that collide each other), thereby regulating both the co-translational quality control and stress response. We propose that GCN1 regulates ribosome-mediated signaling by dynamically changing its partners among RWD domain-possessing proteins via unknown mechanisms. We recently demonstrated that GCN1 is essential for cell proliferation and whole-body energy regulation in mice. However, the manner in which ribosome-initiated signaling via GCN1 is related to various physiological functions warrants clarification. GCN1-mediated mechanisms and its interaction with other quality control and stress response signals should be important for proteostasis during aging and neurodegenerative diseases, and may be targeted for drug development.

摘要

GCN1 被认为是激活 GCN2 的必需因子,GCN2 是氨基酸饥饿的传感器。这种功能从酵母到高等真核生物都是保守的。然而,最近的研究揭示了 GCN1 的非典型功能,它独立于 GCN2,参与细胞增殖、凋亡和免疫反应等,超越了物种的界限。虽然已知 GCN1 和 GCN2 与核糖体相互作用以完成氨基酸饥饿感应,但最近的研究报告称,GCN1 与双联体(即相互碰撞的核糖体)结合,从而调节共翻译质量控制和应激反应。我们提出,GCN1 通过未知机制在具有 RWD 结构域的蛋白质之间动态改变其伴侣,从而调节核糖体介导的信号转导。我们最近证明,GCN1 对小鼠的细胞增殖和全身能量调节至关重要。然而,GCN1 通过核糖体起始的信号与各种生理功能的关系尚需阐明。GCN1 介导的机制及其与其他质量控制和应激反应信号的相互作用对于衰老和神经退行性疾病期间的蛋白质稳态可能很重要,并且可能成为药物开发的目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ad8/10931611/55a3f7647e1f/ijms-25-02998-g001.jpg

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